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Antiparasitic compounds that target DNA

机译:靶向DNA的抗寄生虫化合物

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Designed, synthetic heterocyclic diamidines have excellent activity against eukaryotic parasites that cause diseases such as sleeping sickness and leishmania and adversely affect millions of people each year. The most active compounds bind specifically and strongly in the DNA minor groove at AT sequences. The compounds enter parasite cells rapidly and appear first in the kinetoplast that contains the mitochondrial DNA of the parasite. With time the compounds are also generally seen in the cell nucleus but are not significantly observed in the cytoplasm. The kinetoplast decays over time and disappears from the mitochondria of treated cells. At this point the compounds begin to be observed in other regions of the cell, such as the acidocalcisomes. The cells typically die in 24-48 h after treatment. Active compounds appear to selectively target extended AT sequences and induce changes in kinetoplast DNA minicircles that cause a synergistic destruction of the catenated kinetoplast DNA network and cell death.
机译:设计的合成杂环二am具有出色的抗真核生物寄生虫活性的能力,这些疾病可导致诸如昏睡病和利什曼病等疾病,并每年对数百万人造成不利影响。最具活性的化合物在AT序列的DNA小沟中特异性强结合。该化合物迅速进入寄生虫细胞,并首先出现在含有该寄生虫线粒体DNA的动塑料中。随着时间的流逝,这些化合物通常也可以在细胞核中看到,但在细胞质中却没有明显观察到。运动质体随着时间的流逝而衰减,并从处理过的细胞的线粒体中消失。在这一点上,化合物开始在细胞的其他区域被观察到,例如酸性钙同工酶。细胞通常在处理后24-48小时内死亡。活性化合物似乎选择性地靶向扩展的AT序列,并诱导动塑料DNA小环的变化,从而导致链化的动塑料DNA网络的协同破坏和细胞死亡。

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